Journal Article10.1016/j.jenvman.2022.115755
Dynamic adsorption of diclofenac onto a magnetic nanocomposite in a continuous stirred-tank reactor.
Lisa Rocha,Érika M. L. Sousa,María Victoria Gil,Marta Otero,Valdemar I. Esteves,Vânia Calisto +5 more
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TL;DR: In this article , a waste-based magnetic activated carbon (MAC) was used for the first time in a continuous-flow stirred tank reactor (CSTR) to evaluate the dynamic removal of diclofenac (DCF) from water and wastewater.
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About: This article is published in Journal of Environmental Management. The article was published on 02 Aug 2022. The article focuses on the topics: Medicine & Adsorption.
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Citations
Investigation of behaviours of diclofenac adsorption onto different adsorbents of carbon- aerogel by the kinetic and isotherm non-linear models
Hassan Rasoulzadeh,Amir Sheikhmohammadi,Navid Alinejad,Mohammadreza Alipour,Mostafa Hadei,Seyed Mohsen Aghaei Zarch,R. Nasiri,Mohsen Saadani +7 more
TL;DR: In this paper , three adsorbents (carbon/aerogel (CA), carbon/aeroogel/nickel (CAN) and carbon/aeroglobalized magnetite (CAM)) were used to remove diclofenac from the aqueous solutions.
Effectively removal of PPCPs by catalytic activated biochar derived from hazelnut shell: modeled and predicted by machine learning
Yukun Wang,Chen Wang,Xiaomeng An,Rui Wang,Yuanyuan Li,Yinyin Xu,Xiuwen Cheng +6 more
2
ANN-CFD research on key parameters of stirred tank based on multi-objective optimization and decision makers’ preferences
Yukun Wu,Zhengquan Li,Boqun Zhang,Huimin Chen +3 more
Effectively Removal of Ppcps By Catalytic Activated Biochar Derived from Hazelnut Shell: Modeled and Predicted by Machine Learning
Yukun Wang,Wang Chen,Xiaopeng An,Qianqian Wang,Yuanyuan Li,Yinyin Xu +5 more
- 01 Jan 2023
TL;DR: Effectively remove PPCPs by catalytic activated biochar derived from hazelnut shell. High removal rates achieved for SMX and DCF. The adsorption process conforms to chemical adsorption and monolayer adsorption. The adsorption mechanism includes pore adsorption, electrostatic interactions, intramolecular hydrogen bonding, the reaction with oxygen-containing functional groups and metal complexation.
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